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Dynamique ultrarapide de lasers à cascade quantique Terahertz - le graphène comme émetteur Terahertz

机译:太赫兹量子级联激光器的超快动力学-石墨烯作为太赫兹发射器

摘要

The terahertz (THz) range is a region of the electromagnetic spectrum which lies at the limit between the electronic and optical domain. Currently, THz applications suffer from the lack of sources and detectors. In this context, this thesis focuses on the fundamental study and the development of new functionalities of different THz sources, usingTHz time-domain spectroscopy (TDS) as a base. This powerful tool enables to acquire the temporal profile of a THz electric field and is used to explore the THz emission properties of quantum cascade lasers (QCLs) and graphene.In the first part, the ultrafast response of QCLs is investigated. A phase control of the electric field of THz QCLs via injection seeding is realised and optimised. This enables the measurement of the amplitude and temporal profile of the laser emission. Throughthese experiments and simulations, a quantitative description of the gain dynamics can be accessed. This information is critical for modelocking. Finally, a fast modulation of the gain of QCLs is realized and leads to short pulses generation (15 ps) in a modelocked regime. These studies open the way for using QCLs as powerful sources in TDS.In the second part, THz radiation generation from graphene under optical excitation is demonstrated by a second order non-linear process. The THz emission results from themomentum transfer from the photons to the electrons of graphene (photon drag). As well as broadband THz generation, novel bandstructure properties of graphene can be explored such as the different dynamics between the photogenerated electrons and holes.
机译:太赫兹(THz)范围是电磁频谱的一个区域,位于电子域和光学域之间。当前,太赫兹应用因缺乏光源和检测器而受苦。在此背景下,本文以太赫兹时域谱(TDS)为基础,着重于基础研究和不同太赫兹源的新功能开发。该功能强大的工具能够获取太赫兹电场的时间分布,并用于探索量子级联激光器(QCL)和石墨烯的太赫兹发射特性。在第一部分中,研究了QCL的超快响应。通过注入晶种实现和优化了太赫兹QCL电场的相位控制。这使得能够测量激光发射的幅度和时间分布。通过这些实验和仿真,可以访问增益动态的定量描述。此信息对于模型共享至关重要。最终,实现了对QCL增益的快速调制,并导致在锁模状态下产生短脉冲(15 ps)。这些研究为将QCL用作TDS的强大来源开辟了道路。第二部分,通过二阶非线性过程证明了在光激发下石墨烯产生THz辐射。 THz发射是由动量从光子转移到石墨烯电子(光子拖曳)产生的。除了产生宽带太赫兹信号外,还可以探索石墨烯的新颖能带结构特性,例如光生电子与空穴之间的不同动力学。

著录项

  • 作者

    Maysonnave Jean;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 fr
  • 中图分类
  • 入库时间 2022-08-20 20:24:43

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